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Innate recognition of apoptotic cells: novel apoptotic cell-associated molecular patterns revealed by crossreactivity of anti-LPS antibodies

机译:凋亡细胞的先天识别:抗LPS抗体的交叉反应性揭示了新的凋亡细胞相关分子模式

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摘要

Cells dying by apoptosis are normally cleared by phagocytes through mechanisms that can suppress inflammation and immunity. Molecules of the innate immune system, the pattern recognition receptors (PRRs), are able to interact not only with conserved structures on microbes (pathogen-associated molecular patterns, PAMPs) but also with ligands displayed by apoptotic cells. We reasoned that PRRs might therefore interact with structures on apoptotic cells – apoptotic cell-associated molecular patterns (ACAMPs) – that are analogous to PAMPs. Here we show that certain monoclonal antibodies raised against the prototypic PAMP, lipopolysaccharide (LPS), can crossreact with apoptotic cells. We demonstrate that one such antibody interacts with a constitutively expressed intracellular protein, laminin-binding protein, which translocates to the cell surface during apoptosis and can interact with cells expressing the prototypic PRR, mCD14 as well as with CD14-negative cells. Anti-LPS cross reactive epitopes on apoptotic cells colocalised with annexin V- and C1q-binding sites on vesicular regions of apoptotic cell surfaces and were released associated with apoptotic cell-derived microvesicles (MVs). These results confirm that apoptotic cells and microbes can interact with the immune system through common elements and suggest that anti-PAMP antibodies could be used strategically to characterise novel ACAMPs associated not only with apoptotic cells but also with derived MVs.
机译:吞噬细胞通常通过抑制炎症和免疫的机制清除因凋亡而死亡的细胞。先天免疫系统的分子,模式识别受体(PRR),不仅能够与微生物的保守结构(病原相关的分子模式,PAMP)相互作用,而且还能与凋亡细胞展示的配体相互作用。我们认为,PRR可能因此与凋亡细胞上的结构相互作用-凋亡细胞相关分子模式(ACAMP)-与PAMP类似。在这里,我们显示了针对原型PAMP的某些单克隆抗体脂多糖(LPS)可以与凋亡细胞发生交叉反应。我们证明一种这样的抗体与组成性表达的细胞内蛋白,层粘连蛋白结合蛋白相互作用,后者在细胞凋亡期间易位到细胞表面,并且可以与表达原型PRR,mCD14以及CD14阴性细胞相互作用。凋亡细胞上的抗LPS交叉反应性抗原决定簇与凋亡细胞表面囊泡区域上的膜联蛋白V和C1q结合位点共定位,并与凋亡细胞衍生的微囊泡(MVs)结合释放。这些结果证实,凋亡细胞和微生物可以通过共同的元素与免疫系统相互作用,并提示抗PAMP抗体可以策略性地用于表征不仅与凋亡细胞而且与衍生的MV相关的新型ACAMP。

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